Dust Trapping by Vortices in Transitional Disks: Evidence for Non-ideal MHD Effects in Protoplanetary Disks
arXiv:1405.2790 · doi:10.1088/0004-637X/795/1/53
Abstract
We study particle trapping at the edge of a gap opened by a planet in a protoplanetary disk. In particular, we explore the effects of turbulence driven by the magnetorotational instability on particle trapping, using global three-dimensional magnetohydrodynamic (MHD) simulations including Lagrangian dust particles. We study disks either in the ideal MHD limit or dominated by ambipolar diffusion (AD) that plays an essential role at the outer regions of a protoplanetary disk. With ideal MHD, strong turbulence (the equivalent viscosity parameter ) in disks prevents vortex formation at the edge of the gap opened by a 9 planet, and most particles (except the particles that drift fastest) pile up at the outer gap edge almost axisymmetrically. When AD is considered, turbulence is significantly suppressed (), and a large vortex forms at the edge of the planet induced gap, which survives 1000 orbits. The vortex can efficiently trap dust particles that span 3 orders of magnitude in size within 100 planetary orbits. We have also carried out two-dimensional hydrodynamical simulations using viscosity as an approximation to MHD turbulence. These hydrodynamical simulations can reproduce vortex generation at the gap edge as seen in MHD simulations. Finally, we use our simulation results to generate synthetic images for ALMA dust continuum observations on Oph IRS 48 and HD 142527, which show good agreement with existing observations. Predictions for future ALMA cycle 2 observations have been made. We conclude that the asymmetry in ALMA observations can be explained by dust trapping vortices and the existence of vortices could be the evidence that the outer protoplanetary disks are dominated by ambipolar diffusion with at the disk midplane.
13 pages, 9 figures, Accepted by ApJ
References in corpus (16)
- Athena: A New Code for Astrophysical MHD
- Ring shaped dust accumulation in transition disks
- Dust filtration at gap edges: Implications for the spectral energy distributions of discs with embedded planets
- Demographics of Transition Objects
- Dust flow in gas disks in the presence of embedded planets
- Planet formation bursts at the borders of the dead zone in 2D numerical simulations of circumstellar disks
- Vortex generation in protoplanetary disks with an embedded giant planet
- Standing on the shoulders of giants: Trojan Earths and vortex trapping in low mass self-gravitating protoplanetary disks of gas and solids
- Type I Planet Migration in Nearly Laminar Disks
- 3D MHD Simulations of Planet Migration in Turbulent Stratified Disks
- Dust accretion onto high-mass planets
- The effect of a planet on the dust distribution in a 3D protoplanetary disk
- Long Term Evolution of Planet-Induced Vortices in Protoplanetary Disks
- Constraining the structure of the transition disk HD 135344B (SAO 206462) by simultaneous modeling of multiwavelength gas and dust observations
- Type III migration in a low viscosity disc
- CO Fundamental Emission from V836 Tau
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